Zijun Zhang
Anhui Agricultural University
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Publication
Featured researches published by Zijun Zhang.
International Journal of Biological Sciences | 2012
Hongguo Cao; Pan Yang; Yong Pu; Xueping Sun; Huiqun Yin; Yu Zhang; Yunhai Zhang; Yunsheng Li; Ya Liu; Fugui Fang; Zijun Zhang; Yong Tao; Xiaorong Zhang
Pluripotent stem cells from domesticated animals have potential applications in transgenic breeding. Here, we describe induced pluripotent stem (iPS) cells derived from bovine fetal fibroblasts by lentiviral transduction of Oct4, Sox2, Klf4 and c-Myc defined-factor fusion proteins. Bovine iPS cells showed typical colony morphology, normal karyotypes, stained positively for alkaline phosphatase (AP) and expressed Oct4, Nanog and SSEA1. The CpG in the promoter regions of Oct4 and Nanog were highly unmethylated in bovine iPS cells compared to the fibroblasts. The cells were able to differentiate into cell types of all three germ layers in vitro and in vivo. In addition, these cells were induced into female germ cells under defined culture conditions and expressed early and late female germ cell-specific genes Vasa, Dazl, Gdf9, Nobox, Zp2, and Zp3. Our data suggest that bovine iPS cells were generated from bovine fetal fibroblasts with defined-factor fusion proteins mediated by lentivirus and have potential applications in bovine transgenic breeding and gene-modified animals.
BMC Genomics | 2014
Yinghui Ling; Chunhuan Ren; Xiaofei Guo; Li-Na Xu; Yafeng Huang; Jian-Chuan Luo; Yunhai Zhang; Xiaorong Zhang; Zijun Zhang
BackgroundSuperior kidding rate is an important economic trait in production of meat goat, and ovulation rate is the precondition of kidding rate. MicroRNAs (miRNAs) play critical roles in almost all ovarian biological processes, including folliculogenesis, follicle development, follicle atresia, luteal development and regression. To find out the different ovarian activity and follicle recruitment with miRNA-mediated posttranscriptional regulation, the small RNAs expressed pattern in the ovarian tissues of multiple and uniparous Anhui White goats during follicular phase was analyzed using Solexa sequencing data.Results1008 miRNAs co-expressed, 309 and 433 miRNAs specifically expressed in the ovaries of multiple and uniparous goats during follicular phase were identified. The 10 most highly expressed miRNAs in the multiple library were also the highest expressed in the uniparous library, and there were no significantly different between each other. The highest specific expressed miRNA in the multiple library was miR-29c, and the one in the uniparous library was miR-6406. 35 novel miRNAs were predicted in total. GO annotation and KEGG Pathway analyses were implemented on target genes of all miRNA in two libraries. RT-PCR was applied to detect the expression level of 5 randomly selected miRNAs in multiple and uniparous hircine ovaries, and the results were consistent with the Solexa sequencing data.ConclusionsIn the present study, the different expression of miRNAs in the ovaries of multiple and uniparous goats during follicular phase were characterized and investigated using deep sequencing technology. The result will help to further understand the role of miRNAs in kidding rate regulation and also may help to identify miRNAs which could be potentially used to increase hircine ovulation rate and kidding rate in the future.
Asian-australasian Journal of Animal Sciences | 2011
Yinghui Ling; Xiaodong Zhang; N. Yao; Jianping Ding; H. Q. Chen; Zijun Zhang; Yu Zhang; Chunhuan Ren; Y. H. Ma; Xiaorong Zhang
To investigate the genetic diversity of seven Chinese indigenous meat goat breeds (Tibet goat, Guizhou white goat, Shannan white goat, Yichang white goat, Matou goat, Changjiangsanjiaozhou white goat and Anhui white goat), explain their genetic relationship and assess their integrity and degree of admixture, 302 individuals from these breeds and 42 Boer goats introduced from Africa as reference samples were genotyped for 11 microsatellite markers. Results indicated that the genetic diversity of Chinese indigenous meat goats was rich. The mean heterozygosity and the mean allelic richness (AR) for the 8 goat breeds varied from 0.697 to 0.738 and 6.21 to 7.35, respectively. Structure analysis showed that Tibet goat breed was genetically distinct and was the first to separate and the other Chinese goats were then divided into two sub-clusters: Shannan white goat and Yichang white goat in one cluster; and Guizhou white goat, Matou goat, Changjiangsanjiaozhou white goat and Anhui white goat in the other cluster. This grouping pattern was further supported by clustering analysis and Principal component analysis. These results may provide a scientific basis for the characteristization, conservation and utilization of Chinese meat goats.
African Journal of Biotechnology | 2012
Hongguo Cao; Zhifei Xie; Yong Pu; Pan Yang; Ya Liu; Yunsheng Li; Fugui Fang; Zijun Zhang; Yunhai Zhang; Yong Tao; Xiaorong Zhang
Mouse embryonic stem cells (mESCs) can be propagated in vitro on the feeders of mouse embryonic fibroblasts. In this study, we found growth inhibition of mESCs cultured on embryonic fibroblast feeders derived from different livestock animals. Under the same condition, mESCs derived from mouse embryonic fibroblast feeders were seen on the mass-like colonies and round or oval images, and more significant growth in the total number of colonies ( p <0.05) and viable cells in the colonies ( p <0.01) than that from goat embryonic fibroblast feeders, and viable cells in the colonies ( p <0.05) than that from porcine embryonic fibroblast feeders. The feeders from bovine embryonic fibroblasts also reduced viable cells in the colonies, but were not significantly different in the total number of colonies and viable cells in the colonies with mouse embryonic fibroblast feeders. mESCs on the different embryonic fibroblast feeders were expressed as stem cell-specific markers Oct 4 and stage-specific embryonic antigen 1 (SSEA 1). Here, our results indicate that the feeders from goat, porcine and bovine embryonic fibroblasts inhibit the proliferation of mESCs. Key words : Domestic animals, feeders, mouse embryonic stem cells (mESCs), growth.
Archive | 2012
Zijun Zhang; Jiahong Chen; Chunhuan Ren; Xiaofei Guo; Xiao Cheng; Yafeng Huang; Zewen Chen; Yinghui Ling; Xianhu Luo; Xuguang Liu
Archive | 2012
Zijun Zhang; Xiaofei Guo; Chunhuan Ren; Xiao Cheng; Zewen Chen; Yafeng Huang; Jiahong Chen; Xuguang Liu; Xianhu Luo; Hongyu Liu
Archive | 2012
Hongguo Cao; Xiaorong Zhang; Pan Yang; Yong Pu; Yunhai Zhang; Ya Liu; Yong Tao; Fugui Fang; Yunsheng Li; Chunhuan Ren; Zijun Zhang; Jianping Ding; Hongyu Liu
Archive | 2012
Lisheng Wang; Fei Fang; Xiaorong Zhang; Maoji Cheng; Jianbo Cheng; Jianping Ding; Haiying Cai; Hongyu Liu; Tao Zhou; Zijun Zhang; Xiaoling Ding
Archive | 2012
Zijun Zhang; Xiaorong Zhang; Chunhuan Ren; Jiahong Chen; Xiao Cheng; Xuguang Liu; Xianhu Luo; Jianbo Cheng; Xiaofei Guo; Yafeng Huang; Manman Yang
Archive | 2012
Zijun Zhang; Xiao Cheng; Chunhuan Ren; Yinghui Ling; Jiahong Chen; Xiaofei Guo; Yafeng Huang; Zewen Chen; Hongyu Liu; Xianhu Luo